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US20160029345A1 - Concurrent Data Communication and Voice Call Monitoring Using Dual SIM - Google Patents

Concurrent Data Communication and Voice Call Monitoring Using Dual SIM
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Publication number
US20160029345A1
US20160029345A1US14/807,306US201514807306AUS2016029345A1US 20160029345 A1US20160029345 A1US 20160029345A1US 201514807306 AUS201514807306 AUS 201514807306AUS 2016029345 A1US2016029345 A1US 2016029345A1
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United States
Prior art keywords
rat
paging
radio
signal
data
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US14/807,306
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US9942873B2 (en
Inventor
Johnson O. Sebeni
Li Su
Jianxiong Shi
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Apple Inc
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Apple Inc
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Priority to US14/807,306priorityCriticalpatent/US9942873B2/en
Assigned to APPLE INC.reassignmentAPPLE INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SHI, JIANXIONG, SEBENI, JOHNSON O., SU, LI
Priority to PCT/US2015/041958prioritypatent/WO2016014928A1/en
Priority to CN201580040207.4Aprioritypatent/CN106664118B/en
Priority to TW104124151Aprioritypatent/TWI586198B/en
Publication of US20160029345A1publicationCriticalpatent/US20160029345A1/en
Application grantedgrantedCritical
Publication of US9942873B2publicationCriticalpatent/US9942873B2/en
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Abstract

Performing concurrent data communication and voice call monitoring using a single cellular radio. According to some embodiments, the UE may perform data communication, via the radio, using a first RAT, supported by a first SIM. The UE may also perform paging functions for a voice communication, via the radio, using a second RAT, supported by a second SIM. In some scenarios, the first and second RATs are the same. The data communication and the paging functions may be performed concurrently using shared physical layer resources. For example, the shared physical layer resources may comprise a shared software defined radio (SDR) configured to demodulate and/or decode signals of the data communication and the paging function. As another example, the shared physical layer resources may comprise a shared Rake receiver configured to demodulate signals of the data communication and the paging function.

Description

Claims (20)

What is claimed is:
1. A user equipment device (UE), comprising:
a first subscriber identity module (SIM);
a second SIM; and
a radio coupled to the first SIM and the second SIM, wherein the radio is configured to:
perform data communication using a first radio access technology (RAT), the data communication supported by the first SIM; and
perform a paging function for a voice communication using a second RAT, wherein the second RAT is not Global System for Mobile Communications (GSM), the paging function supported by the second SIM, wherein the performing the paging function is performed concurrently with the performing the data communication;
wherein the radio comprises shared physical layer resources that are shared between the performing the data communication and the performing the paging function,
wherein the radio comprises a software defined radio that is shared between the performing the data communication and the performing the paging function, wherein the software defined radio is configured to demodulate and decode data signals of the data communication and paging signals of the paging function, wherein the shared physical layer resources comprise a software defined radio configured to decode data signals of the data communication and paging signals of the paging function.
2. The UE ofclaim 1, wherein the software defined radio is further configured to demodulate the data signals of the data communication and the paging signals of the paging function.
3. The UE ofclaim 1, wherein the shared physical layer resources further comprise a Rake receiver, wherein a plurality of fingers of the Rake receiver are configured for demodulation of data signals of the data communication, and wherein, during paging reception cycles, a subset of the plurality of fingers of the Rake receiver are configured for demodulation of paging signals of the paging function.
4. The UE ofclaim 1, wherein the radio further comprises:
a first Rake receiver configured to demodulate data signals of the data communication; and
a second Rake receiver configured to demodulate paging signals of the paging function, wherein the second Rake receiver comprises fewer fingers than the first Rake receiver.
5. The UE ofclaim 1, wherein the first RAT is the same as the second RAT.
6. The UE ofclaim 5, wherein the first RAT and the second RAT are Universal Mobile Telecommunications System-Frequency Division Duplexing (UMTS-FDD).
7. The UE ofclaim 5, wherein the radio is configured to perform the data communication using a first instantiation of a protocol stack for the first RAT, and to perform the paging function using a second instantiation of the protocol stack for the same RAT.
8. A method, comprising:
by a user equipment device (UE) comprising a cellular radio:
receiving, via the cellular radio, a data signal of a first radio access technology (RAT) supported by a first subscriber identity module (SIM);
receiving, via the cellular radio, a paging signal of a second RAT supported by a second SIM;
concurrently demodulating the data signal and the paging signal; and
concurrently decoding the data signal and the paging signal at the physical layer using a software defined radio (SDR), wherein the SDR is configured to decode the data signal and the paging signal in a time-interleaved fashion.
9. The method ofclaim 8, wherein the concurrently demodulating the data signal and the paging signal is performed by shared physical layer resources that are shared between the first RAT and the second RAT.
10. The method ofclaim 9, wherein the concurrently demodulating the data signal and the paging signal comprises the SDR demodulating the data signal and the paging signal in a time-interleaved fashion.
11. The method ofclaim 9, wherein the shared physical layer resources comprise a Rake receiver having a plurality of fingers, wherein the concurrently demodulating the data signal and the paging signal comprises:
utilizing all of the fingers of the Rake receiver to demodulate signals from the first RAT when no signal from the second RAT is present; and
utilizing a first subset of the fingers of the Rake receiver to demodulate signals from the first RAT and a second subset of the fingers to demodulate signals from the second RAT when a paging signal from the second RAT is present.
12. The method ofclaim 8, wherein the concurrently demodulating the data signal and the paging signal comprises:
demodulating the data signal using a first Rake receiver; and
demodulating the paging signal using a second Rake receiver, wherein the second Rake receiver comprises fewer fingers than the first Rake receiver.
13. The method ofclaim 8, wherein the first RAT is the same as the second RAT.
14. The method ofclaim 13, wherein the first RAT and the second RAT are Universal Mobile Telecommunications System-Frequency Division Duplexing (UMTS-FDD).
15. A non-transitory computer-accessible memory medium comprising program instructions executable by a processor of a communication device, the program instructions causing the communication device to:
receive a data signal of a first radio access technology (RAT) supported by a first subscriber identity module (SIM);
receive a paging signal of a second RAT supported by a second SIM;
concurrently demodulate the data signal and the paging signal; and
concurrently decode the data signal and the paging signal at the physical layer via a software defined radio (SDR) of the communication device, wherein the SDR is configured to decode the data signal and the paging signal in a time-interleaved fashion.
16. The non-transitory computer-accessible memory medium ofclaim 15, wherein concurrently demodulating the data signal and the paging signal is performed by shared physical layer resources that are shared between the first RAT and the second RAT.
17. The non-transitory computer-accessible memory medium ofclaim 16, wherein concurrently demodulating the data signal and the paging signal comprises the SDR demodulating the data signal and the paging signal in a time-interleaved fashion.
18. The non-transitory computer-accessible memory medium ofclaim 16, wherein the shared physical layer resources comprise a Rake receiver having a plurality of fingers, wherein, in concurrently demodulating the data signal and the paging signal, the program instructions further cause the communication device to:
utilize all of the fingers of the Rake receiver to demodulate signals from the first RAT when no signal from the second RAT is present; and
utilize a first subset of the fingers of the Rake receiver to demodulate signals from the first RAT and a second subset of the fingers to demodulate signals from the second RAT when a paging signal from the second RAT is present.
19. The non-transitory computer-accessible memory medium ofclaim 15, wherein, in concurrently demodulating the data signal and the paging signal, the program instructions further cause the communication device to:
demodulate the data signal using a first Rake receiver; and
demodulate the paging signal using a second Rake receiver, wherein the second Rake receiver comprises fewer fingers than the first Rake receiver.
20. The non-transitory computer-accessible memory medium ofclaim 15, wherein the first RAT is the same as the second RAT.
US14/807,3062014-07-252015-07-23Concurrent data communication and voice call monitoring using dual SIMActive2035-10-17US9942873B2 (en)

Priority Applications (4)

Application NumberPriority DateFiling DateTitle
US14/807,306US9942873B2 (en)2014-07-252015-07-23Concurrent data communication and voice call monitoring using dual SIM
PCT/US2015/041958WO2016014928A1 (en)2014-07-252015-07-24Concurrent data communication and voice call monitoring using dual sim
CN201580040207.4ACN106664118B (en)2014-07-252015-07-24 Method and apparatus for simultaneous data communication and voice call monitoring using dual subscriber identity modules
TW104124151ATWI586198B (en)2014-07-252015-07-24Concurrent data communication and voice call monitoring using dual sim

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US201462029415P2014-07-252014-07-25
US14/807,306US9942873B2 (en)2014-07-252015-07-23Concurrent data communication and voice call monitoring using dual SIM

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US20160029345A1true US20160029345A1 (en)2016-01-28
US9942873B2 US9942873B2 (en)2018-04-10

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US14/807,306Active2035-10-17US9942873B2 (en)2014-07-252015-07-23Concurrent data communication and voice call monitoring using dual SIM

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US (1)US9942873B2 (en)
CN (1)CN106664118B (en)
TW (1)TWI586198B (en)
WO (1)WO2016014928A1 (en)

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US9812149B2 (en)2016-01-282017-11-07Knowles Electronics, LlcMethods and systems for providing consistency in noise reduction during speech and non-speech periods
US9830930B2 (en)2015-12-302017-11-28Knowles Electronics, LlcVoice-enhanced awareness mode
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KR102655169B1 (en)2018-08-272024-04-05삼성전자주식회사 Apparatus and method for simultaneously providing voice calls and data services on multiple SIMs
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US20160249301A1 (en)*2013-02-222016-08-25St-Ericsson SaCommunication Method, Device for Dual-SIM Card-Dual-Call Terminal, and Dual-SIM Card-Dual-Call Terminal
US9401158B1 (en)2015-09-142016-07-26Knowles Electronics, LlcMicrophone signal fusion
US9961443B2 (en)2015-09-142018-05-01Knowles Electronics, LlcMicrophone signal fusion
US9779716B2 (en)2015-12-302017-10-03Knowles Electronics, LlcOcclusion reduction and active noise reduction based on seal quality
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Also Published As

Publication numberPublication date
US9942873B2 (en)2018-04-10
TWI586198B (en)2017-06-01
CN106664118A (en)2017-05-10
CN106664118B (en)2019-06-25
TW201613411A (en)2016-04-01
WO2016014928A1 (en)2016-01-28

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